Capillary blowing nozzle system capable of randomly adjusting angle

The adjustable capillary nozzle system solves the problem of difficult adjustment of the air knife in the air knife dryer, achieving efficient and energy-saving removal of moisture from the surface of bottles and jars, and extending the service life of the nozzle.

CN223470474UActive Publication Date: 2025-10-24SHANGHAI YIWEI MACHINERY CO LTD
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Patent Information

Application Number
CN202423000861.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-24
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

The air knife blowing port of the existing air knife dryer is difficult to adjust, resulting in low production efficiency.

Method used

The system employs a capillary nozzle system with an adjustable angle, including a support, an airtight metal pipe, a ball joint, and a nozzle mechanism. The nozzle angle can be adjusted arbitrarily through the ball joint structure, and nickel and chromium plating layers are applied to the nozzle to improve wear resistance and corrosion resistance.

Benefits of technology

It improves drying efficiency, saves compressed air consumption, increases blowing pressure, ensures uniform air pressure, and extends the service life of the nozzle.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223470474U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of machinery, in particular to a blowing nozzle technology of a blow-drying machine. The capillary blowing nozzle system capable of adjusting the angle at will comprises a support, a compressed air pipeline and an airtight metal pipeline, the metal pipeline is called as an air guide pipe, and the air guide pipe is fixedly connected to the support; the air guide pipe is provided with a compressed air connector communicated with a compressed air pipeline. Blowing nozzle mechanisms are uniformly distributed on one side of the air guide pipe, and the distributed blowing nozzle mechanisms form a blowing nozzle array; the side, provided with the blowing nozzle array, of the air guide pipe is called the blowing nozzle side. The blowing nozzle mechanism comprises a ball joint and a blowing nozzle; the ball joint comprises a ball bowl and a hollow ball; the blowing nozzle side of the air guide pipe is fixedly connected with a ball bowl through a hollow metal pipe; a blowing nozzle is arranged on the exposed side of the ball head; the air guide pipe, the ball bowl, the ball head and the blowing nozzle are communicated in sequence to form an air injection air path; and the aperture of the opening of the blowing nozzle is 2.5 mm to 3.5 mm. Through the blowing nozzle device with the ball joint structure, the problem that the blow-drying position of the blow-drying machine is difficult to adjust is solved.
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Description

Technical Field

[0001] The utility model relates to the field of machinery, in particular to a blow nozzle technology for a blow dryer. Background Art

[0002] Bottles, cans and other containers are relatively moist after filling, and they need to be dehydrated and dried before packaging or laser engraving.

[0003] At present, air knife dryers are commonly used equipment for drying bottles and cans. Air knife dryers use air compressors to compress air to the required pressure. The compressed air is sent to the air knife part through a pipe. The air knife is generally designed with a specific flat blade shape and a specific angle. The compressed air is discharged at a high speed through the flat blade to generate a strong and uniform airflow to dry the moisture on the bottles and cans.

[0004] The existing air knife dryer has the problem that it is difficult to adjust the air knife blowing position. Each adjustment takes a long time to change the position and angle of the blade, which seriously affects production efficiency. Utility Model Content

[0005] The purpose of the present utility model is to provide a capillary blowing nozzle system with an arbitrarily adjustable angle, so as to solve at least one of the above technical problems.

[0006] The technical problem solved by the present invention can be achieved by adopting the following technical solutions:

[0007] The capillary blowing nozzle system with adjustable angle includes a bracket and a compressed air pipe, and also includes an airtight metal pipe, which is called an air guide pipe and is fixedly connected to the bracket;

[0008] The air guide pipe is provided with a compressed air interface connected to the compressed air pipeline;

[0009] Mouthpiece mechanisms are evenly distributed on one side of the air guide tube, and the arranged mouthpiece mechanisms form a mouthpiece array;

[0010] The side of the airway tube where the mouthpiece array is arranged is called the mouthpiece side;

[0011] The mouthpiece mechanism includes a ball joint and a mouthpiece;

[0012] The ball joint includes a ball bowl and a hollow ball head;

[0013] The mouthpiece side of the air tube is fixedly connected to the bowl via a hollow metal tube;

[0014] A mouthpiece is provided on the exposed side of the ball head;

[0015] The air guide tube, ball bowl, ball head and mouthpiece are connected in sequence to form an air path for air jet;

[0016] The opening aperture of the blow nozzle is 2.5mm-3.5mm.

[0017] In the above design, the blow nozzle is arranged on the side of the blow nozzle mechanism, so that the compressed air is sequentially communicated through the air guide pipe, the ball bowl, the ball head and the blow nozzle to blow the compressed air to the bottle body and the tank body, and the moisture on the bottle body and the tank body is dried. The beneficial effect is that the air knife structure is omitted, and the capillary blow nozzle is used, so that the structure of the drying machine is more compact.

[0018] In the above design, the ball head section is provided in the blow nozzle mechanism, the ball head of the ball head section can rotate in the ball bowl, and the blow nozzle is connected to the ball head. Through the ball head section, the angle of the blow nozzle can be adjusted within the adjustable range of the ball head section. The through hole aperture of the blow nozzle is 2.5mm-3.5mm, forming a capillary hole, and the compressed air passes through the capillary hole to form strong wind power. The beneficial effect is that on the one hand, the consumption of compressed air can be saved, and on the other hand, the blowing pressure of the blow nozzle can be increased, and the drying efficiency of the moisture on the bottle body and the tank body can be improved.

[0019] Further, the compressed air interface is provided with at least three, and the at least three compressed air interfaces are evenly arranged above the air guide pipe

[0020] In the above design, the compressed air interface is provided with at least three, and the at least three compressed air interfaces are evenly arranged above the metal pipe, which has the beneficial effect of reducing the pressure decay from the edge of the blow nozzle to the air guide pipe, and ensuring that the output air pressure of each blow nozzle in the blow nozzle array is uniform.

[0021] Further, the surface of the ball bowl and the ball head is plated with a nickel plating layer with a thickness of 2um-10um, and the surface of the nickel plating layer is plated with a chromium plating layer with a thickness of 15um-50um.

[0022] In the above design, the plating layer is provided on the rotating surface. The hardness of metal chromium is high, and it has good wear resistance and good corrosion resistance in a humid environment. The beneficial effect is to improve the service life of the blow nozzle. There is also a nickel plating layer between the substrate and the chromium plating layer. The role of the nickel plating layer is that the metal nickel has wear resistance and corrosion resistance, and secondly, the nickel plating layer helps the chromium plating layer to be more firmly electroplated, improves the electroplating quality of the plating layer, and increases the service life of the blow nozzle.

[0023] Further, each blow nozzle in the blow nozzle array is movably connected to the same metal rod;

[0024] The metal rod is movably connected to a left-right moving mechanism at least at one end;

[0025] The mechanism moves each blow nozzle in the blow nozzle array left and right.

[0026] In the above design, one end of the metal rod is connected to a mechanism that can move left and right, the mechanism can drive the metal rod to move left and right, and in turn drive the blow nozzle to move left and right, which has the beneficial effect that all blow nozzles in the blow nozzle array can be driven to adjust the blowing position at the same time.

[0027] In the utility model, the blow nozzle mechanism has a ball head joint structure, the ball head is connected to the blow nozzle, the ball bowl is fixedly connected to the blow nozzle side of the air guide pipe, the blow nozzle passes through the ball head, and the blowing position of the blow nozzle is adjusted at will within the rotation range of the ball head joint. The hole diameter of the through hole of the blow rod is 2.5mm-3.5mm, and a capillary hole through which compressed air can pass is formed, which has the beneficial effect that the consumption of compressed air is saved, and the blowing pressure of the blow nozzle can be enhanced, so that the drying efficiency of the moisture on the bottle body and the can body is improved. BRIEF DESCRIPTION OF DRAWINGS

[0028] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creative labor. Among them:

[0029] Figure 1 It is the schematic diagram of the utility model;

[0030] Figure 2 It is the schematic diagram of a single blow nozzle of the utility model;

[0031] Figure 3 It is the sectional view of a single blow nozzle of the utility model.

[0032] Symbol explanation:

[0033] 1, compressed air interface;2, air guide pipe;3, blow nozzle mechanism;4, blow nozzle;5, ball head joint;6, metal pipe. DETAILED DESCRIPTION

[0034] In order to make the above purpose, features and advantages of the utility model more obvious, the following will make detailed description to the specific implementation of the utility model combined with the drawings of the specification.

[0035] In the following description, many specific details are set forth in order to fully understand the utility model, but the utility model can also be implemented in other ways different from the description herein, and those skilled in the art can make similar generalization without departing from the connotation of the utility model, therefore, the utility model is not limited by the specific embodiments disclosed below.

[0036] Second, the utility model is described in detail in combination with the schematic diagram, in the detailed description of the utility model embodiment, for the convenience of description, the section view of the device structure will be partially enlarged without the general proportion, and the schematic diagram is only an example, which should not limit the scope of the utility model protection here. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in actual production.

[0037] Thirdly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the utility model. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an embodiment that is independent of or selectively excludes other embodiments.

[0038] Referring to Figure 1 , Figure 2 , Figure 3 As shown, the angle-adjustable capillary blow nozzle system comprises a support and a compressed air pipeline, and further comprises a gas-tight metal pipe 6, which is referred to as a gas guide pipe 2 and is fixedly connected to the support;

[0039] The gas guide pipe 2 is provided with a compressed air interface 1 connected to the compressed air pipeline;

[0040] The gas guide pipe 2 is provided with a compressed air interface 1 connected to the compressed air pipeline;

[0041] One side of the gas guide pipe 2 is provided with blow nozzle mechanisms 3 arranged in rows;

[0042] The side of the gas guide pipe 2 provided with the blow nozzle array is referred to as a blow nozzle side;

[0043] The blow nozzle mechanism 3 comprises a ball head section 5 and a blow nozzle 4;

[0044] The ball head section 5 comprises a ball bowl and a hollow ball head;

[0045] The blow nozzle side of the gas guide pipe 2 is fixedly connected to the ball bowl through the hollow metal pipe 6;

[0046] One side of the blow nozzle 4 exposed outside the ball head is provided with a blow nozzle 4;

[0047] The blow nozzle 4 is sequentially connected to the gas guide pipe 2, the ball bowl, the ball head and the blow nozzle 4 to form a gas path for jetting air;

[0048] In the embodiment, the blow nozzle side is arranged with the blow nozzle mechanism 3 array, so that the compressed air is blown to the bottle body and the tank body through the gas path sequentially connected by the gas guide pipe 2, the ball bowl, the ball head and the blow nozzle 4, and the moisture on the bottle body and the tank body is dried, which has the beneficial effect that the structure of the drying machine is more compact because the air knife structure is omitted and the capillary blow nozzle 4 is used instead.

[0049] In this embodiment, the blow nozzle mechanism 3 has a ball joint 5 structure, the ball head of the ball joint 5 can rotate in the ball bowl, and the blow nozzle 4 is connected to the ball head. Through the ball joint 5 structure, the angle of the blow nozzle 4 can be adjusted within the adjustable range of the ball joint 5. The blow nozzle 4 has a through hole with a diameter of 2.5mm-3.5mm, forming a capillary hole, and the compressed air passes through the capillary hole to form strong wind power. Its beneficial effect is that on the one hand it can save the consumption of compressed air, and on the other hand it can enhance the blowing pressure of the blow nozzle 4 and improve the drying efficiency of the moisture on the bottle body and the can body.

[0050] Further, the compressed air interface 1 is provided with at least three, at least three compressed air interfaces 1 are arranged above the air guide pipe 2

[0051] In this embodiment, the compressed air interface 1 is provided with at least three, and is arranged above the metal pipe 6. Its beneficial effect is that it reduces the pressure attenuation from the edge blow nozzle 4 to the air guide pipe 2, and ensures that the output air pressure of each blow nozzle 4 in the blow nozzle array is uniform.

[0052] Further, the surface of the ball bowl and the ball head is plated with a nickel plating layer with a thickness of 2um-10um, and the surface of the nickel plating layer is plated with a chromium plating layer with a thickness of 15um-50um.

[0053] In this embodiment, a plating layer is provided on the rotating surface. The hardness of metal chromium is high, and it has good wear resistance and good corrosion resistance in a humid environment. Its beneficial effect is to improve the service life of the blow nozzle 4. There is also a nickel plating layer between the substrate and the chromium plating layer. The role of the nickel plating layer is that metal nickel has wear resistance and corrosion resistance, and secondly, the nickel plating layer helps the chromium plating layer to be more firmly electroplated, improves the electroplating quality of the plating layer, and increases the service life of the blow nozzle 4.

[0054] Further, each blow nozzle 4 in the blow nozzle array is movably connected to the same metal rod;

[0055] The metal rod is movably connected to a left-right moving mechanism at least at one end;

[0056] The mechanism moves each blow nozzle 4 in the blow nozzle array left and right.

[0057] In this embodiment, one end of the metal rod is connected to a mechanism that can move left and right, which can drive the metal rod to move left and right, and in turn drive the blow nozzle 4 to move left and right. Its beneficial effect is that the blowing position of all blow nozzles 4 in the blow nozzle array can be adjusted at the same time.

[0058] Moreover, for the sake of brevity, certain procedural, computerize, or electrical details have been omitted so as to avoid obscuring the embodiments of the present application. Furthermore, well known devices have been presented only in block diagram form in order to avoid unnecessarily obscuring the present application.

[0059] It is to be understood that the development process can involve various steps that need not be performed in any particular order. The method illustrated in FIG. 10 is one example of a process that can be employed in connection with at least some embodiments of the present application, and not a requirement of all embodiments. In addition, not all of the steps can be necessary in every instance.

[0060] It should be noted that the above-mentioned embodiments are only used to illustrate the technical solutions of the present application, not limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced without departing from the spirit and scope of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. An angle-adjustable capillary blow nozzle system comprising a support and a compressed air conduit, characterized in that, Also included is a gas-tight metal pipe, the metal pipe is called a gas guide pipe, the gas guide pipe is fixedly connected to the support; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; 2. The infinitely adjustable angle capillary blow nozzle system of claim 1, wherein, The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; 3. The infinitely adjustable angle capillary blow nozzle system of claim 1, wherein, The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; 4. The infinitely adjustable angle capillary blow nozzle system of claim 1, wherein, The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a compressed air interface communicating with the compressed air pipe; The gas guide pipe is provided with a